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LATTICE BOLTZMANN SIMULATION OF MISCIBLE FLUIDS DISPLACEMENT IN THE PORE SPACE

机译:孔空间中易流动流体位移的格子Boltzmann模拟

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In this work, we simulate natural miscible process and miscible fluids displacement in pore space by using lattice-Boltzmann method. In the natural miscible case, the results including concentration profile and thickness of miscible zone agree well with analytical solutions, which verifies the model's reliability and veracity. The viscosity ratio is also taken into account to study its influence on the miscible process. Furthermore, we apply pressure boundary at inlet and outlet of the channel to study the displacement of miscible fluids. The whole process, in general, is divided into three phases: fluid flow rate increasing driven by pressure gradient, transitional period, and relatively stable stage. And we carefully give each phase explanations of physical mechanisms. The numerical results provide a good understanding of the mechanisms of miscible fluids displacement and confirm that the LBM can be a promising tool for investigating miscible fluids behavior.
机译:在这项工作中,我们使用晶格-玻尔兹曼方法模拟了自然可混溶过程和可混溶流体在孔隙中的位移。在自然可混溶情况下,包括浓度分布和可混溶区厚度在内的结果与分析解决方案非常吻合,从而验证了模型的可靠性和准确性。还考虑了粘度比,以研究其对混溶过程的影响。此外,我们在通道的入口和出口应用压力边界来研究可混溶流体的驱替。通常,整个过程分为三个阶段:由压力梯度驱动的流体流量增加,过渡期和相对稳定的阶段。并且,我们会仔细地对每个阶段的物理机制进行解释。数值结果很好地理解了混溶流体驱替的机理,并证实了LBM可以作为研究混溶流体行为的有前途的工具。

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